AI Article Synopsis

  • The analysis of polar and amphoteric compounds like glyphosate in seawater is complicated by their tendency to form complexes with metal cations present in salt environments.
  • The study focuses on developing analytical methods involving reversed-phase liquid chromatography-heated electrospray ionization-tandem mass spectrometry (RP-LC-HESI-MS/MS) and the derivatization with FMOC-Cl to improve detection of compounds including glyphosate, glufosinate, AMPA, and 2-AEP.
  • Findings revealed that glyphosate forms complexes that significantly affect its retention time compared to its free form, with specific metal cations influencing detection and analysis, while the use of isotopically labeled internal standards helped correct the effects of salt matrices

Article Abstract

The analysis of highly polar and amphoteric compounds in seawater is a continuing challenge in analytical chemistry due to the possible formation of complexes with the metal cations present in salt-based matrices. Here we provide information for the development of analytical methods for glyphosate, glufosinate, AMPA, and 2-AEP in salt water, based on studies of the effects of salt matrices on reversed-phase liquid chromatography-heated electrospray ionization-tandem mass spectrometry (RP-LC-HESI-MS/MS) after derivatization of the target compounds with FMOC-Cl. The results showed that glyphosate was the only analyte with a strong tendency to form glyphosate-metal complexes (GMC), which clearly influenced the analysis. The retention times (RTs) of GMC and free glyphosate differed by approximately 7.00min, reflecting their distinct RP-LC behaviors. Divalent cations, but not monovalent (Na, K) or trivalent (Al, Fe) cations, contributed to this effect and their influence was concentration-dependent. In addition, Cu, Co, Zn, and Mn prevented glyphosate detection whereas Ca, Mg, and Sr altered the retention time. At certain tested concentrations of Ca and Sr glyphosate yielded two peaks, which violated the fundamental rule of LC, that under the same analytical conditions a single substance yields only one LC-peak with a specific RT. Salt-matrix-induced ion suppression was observed for all analytes, especially under high salt concentrations. For glyphosate and AMPA, the use of isotopically labeled internal standards well-corrected the salt-matrix effects, with better results achieved for glufosinate and 2-AEP with the AMPA internal standard than with the glyphosate internal standard. Thus, our study demonstrated that Ca, Mg, and Sr can be used together with FMOC-Cl to form GMC-FMOC which is suitable for RP-LC-HESI-MS/MS analysis.

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http://dx.doi.org/10.1016/j.chroma.2016.11.007DOI Listing

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